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An analysis of essential elements of licensed, plasmid DNA replication in mammalian cells: Studies of natural and artificial latent origins of Epstein-Barr virus.

机译:哺乳动物细胞中许可的质粒DNA复制的基本要素分析:爱泼斯坦-巴尔病毒的自然和人工潜在起源研究。

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摘要

We developed a mammalian plasmid replicon with a formerly uncharacterized origin of DNA synthesis, 8xRep*. 8xRep* functions efficiently to support once-per-cell-cycle synthesis of plasmid DNA which initiates within Rep*. By characterizing Rep*'s requirements for acting as an origin, we have uncovered several striking properties it shares with DS, the only other well-characterized, licensed, mammalian plasmid origin of DNA synthesis. Rep* contains a pair of previously unrecognized EBNA1-binding sites both necessary and sufficient in cis for its origin activity. These sites have an essential 21bp center-to-center spacing, are bent by EBNA1, and recruit ORC. The properties shared between DS and Rep* define cis and trans characteristics of a mammalian, extrachromosomal replicon.; This comparison of two separate, EBNA1-dependent origins prompted us to identify which essential characteristics of these minimal origins contribute to the efficiency of initiating DNA synthesis. Because a pair of EBNA1-binding sites was determined to be the minimal cis-acting element required for origin function, we sought to characterize further the effect that alterations to these binding sites had upon the efficiency of the initiation of DNA synthesis. To this end, we constructed several artificial, EBNA1-dependent origins of DNA synthesis containing EBNA1-binding sites having a >25-fold range of affinities. Using these engineered origins, we have found a direct correlation between the affinity of EBNA1 binding to an origin and both the efficiency of initiating DNA synthesis and of supporting plasmid establishment with that origin. In addition, the presence of TRF2-binding sites flanking the pairs of EBNA1-binding sites enhanced the replicative efficiency of these origins. One of these engineered origins, composed of four EBNA1-binding sites from FR flanked by binding sites for TRF2, initiated DNA synthesis and supported the formation of colonies more efficiently than did wtDS. This finding indicates that EBV has been selected to evolve and retain a sub-optimal origin of DNA synthesis.
机译:我们开发了一种哺乳动物质粒复制子,该复制子具有以前未知的DNA合成来源8xRep *。 8xRep *有效发挥作用,支持在Rep *内启动的质粒DNA的每个细胞周期合成。通过表征Rep *作为起源的要求,我们发现了与DS共享的几个惊人特性,DS是DNA合成的唯一其他特征明​​确的,许可的哺乳动物质粒起源。 Rep *包含一对先前无法识别的EBNA1结合位点,这两个位点在顺式中均足以满足其起源活动的需要。这些位点之间的中心距基本为21bp,被EBNA1弯曲,并募集ORC。 DS和Rep *之间共有的特性定义了哺乳动物染色体外复制子的顺式和反式特性。对两个独立的,依赖EBNA1的起源的比较促使我们确定这些最小起源的哪些基本特征有助于启动DNA合成的效率。因为确定一对EBNA1结合位点是起源功能所需的最小顺式作用元件,所以我们试图进一步表征改变这些结合位点对DNA合成起始效率的影响。为此,我们构建了几个人工的,依赖EBNA1的DNA合成来源,其中包含EBNA1结合位点的亲和力范围> 25倍。使用这些工程起源,我们发现EBNA1结合到起源的亲和力与启动DNA合成的效率以及以该起源支持质粒建立的效率之间存在直接关联。此外,位于EBNA1结合位点对两侧的TRF2结合位点的存在增强了这些来源的复制效率。这些工程化的起源之一由来自FR的四个EBNA1结合位点组成,两侧是TRF2的结合位点,它们启动了DNA合成,并且比wtDS更有效地支持了菌落的形成。这一发现表明,EBV已被选择进化并保留了DNA合成的次优来源。

著录项

  • 作者

    Lindner, Scott E.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Biology Molecular.; Biology Microbiology.; Biology Virology.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 173 p.
  • 总页数 173
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;微生物学;
  • 关键词

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